DEVELOPMENT OF BANANA FIBERS REINFORCED EPOXYGYPSUM COMPOSITE
Banana fiber composites are developed from banana fiber of Pisang Abu, epoxy and gypsum. The banana fibers were extracted and dried at 60°C. The composites were test for 30vol% and 40vol% oflong and short fiber to determine the effect offiber length and the optimum fiber content. At 10vol% and 20...
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Universiti Teknologi PETRONAS
2009
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my-utp-utpedia.92032013-10-22T09:57:50Z http://utpedia.utp.edu.my/9203/ DEVELOPMENT OF BANANA FIBERS REINFORCED EPOXYGYPSUM COMPOSITE SEBAN, SYARIFUDDIN TP Chemical technology Banana fiber composites are developed from banana fiber of Pisang Abu, epoxy and gypsum. The banana fibers were extracted and dried at 60°C. The composites were test for 30vol% and 40vol% oflong and short fiber to determine the effect offiber length and the optimum fiber content. At 10vol% and 20vol% of gypsum added to the short fiber composite, the mechanical properties of the composite are different. All samples were tested for flexural strength and Scanning Electron Microscopic (SEM) at the fracture surface. A very high architectural art design pose in the composites will add value and make it more commercialize. Other that diat, lots of applications can be developed from usingbanana fiberreinforce epoxy-gypsum composite. IV Universiti Teknologi PETRONAS 2009-01 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/9203/1/2009%20Bachelor%20-%20Development%20Of%20Banana%20Fibers%20Reinforced%20Epoxy-Gypsum%20Composite.pdf SEBAN, SYARIFUDDIN (2009) DEVELOPMENT OF BANANA FIBERS REINFORCED EPOXYGYPSUM COMPOSITE. Universiti Teknologi PETRONAS. (Unpublished) |
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Banana fiber composites are developed from banana fiber of Pisang Abu, epoxy and
gypsum. The banana fibers were extracted and dried at 60°C. The composites were test
for 30vol% and 40vol% oflong and short fiber to determine the effect offiber length and
the optimum fiber content. At 10vol% and 20vol% of gypsum added to the short fiber
composite, the mechanical properties of the composite are different. All samples were
tested for flexural strength and Scanning Electron Microscopic (SEM) at the fracture
surface. A very high architectural art design pose in the composites will add value and
make it more commercialize. Other that diat, lots of applications can be developed from
usingbanana fiberreinforce epoxy-gypsum composite.
IV |
format |
Final Year Project |
author |
SEBAN, SYARIFUDDIN |
author_facet |
SEBAN, SYARIFUDDIN |
author_sort |
SEBAN, SYARIFUDDIN |
title |
DEVELOPMENT OF BANANA FIBERS REINFORCED EPOXYGYPSUM
COMPOSITE |
title_short |
DEVELOPMENT OF BANANA FIBERS REINFORCED EPOXYGYPSUM
COMPOSITE |
title_full |
DEVELOPMENT OF BANANA FIBERS REINFORCED EPOXYGYPSUM
COMPOSITE |
title_fullStr |
DEVELOPMENT OF BANANA FIBERS REINFORCED EPOXYGYPSUM
COMPOSITE |
title_full_unstemmed |
DEVELOPMENT OF BANANA FIBERS REINFORCED EPOXYGYPSUM
COMPOSITE |
title_sort |
development of banana fibers reinforced epoxygypsum
composite |
publisher |
Universiti Teknologi PETRONAS |
publishDate |
2009 |
url |
http://utpedia.utp.edu.my/9203/1/2009%20Bachelor%20-%20Development%20Of%20Banana%20Fibers%20Reinforced%20Epoxy-Gypsum%20Composite.pdf http://utpedia.utp.edu.my/9203/ |
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1739831643870330880 |
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13.214268 |